METHOD FOR DELIVERY OF SUSPENSION PARACHUTE SYSTEM TO LANDING POINT Russian patent published in 2020 - IPC G01C23/00 

Abstract RU 2732474 C1

FIELD: aviation.

SUBSTANCE: invention describes a method of delivering a suspension parachute system to a landing point which implements dynamic calculation of a landing cone from a landing point based on parachute system parameters and meteorological conditions by determining the radius of the circle, from which the parachute system can enter the landing point in height over the landing point, taking into account the glide path, then base point is determined on final circle of landing cone so that point is maximum remote from centre of cone of landing circle in direction opposite to predicted direction of wind, dynamic calculation of reduction cone from base point based on parameters of parachute system and meteorological conditions by determining radius of circle, from which the parachute system can get to the base point by height above the base point, delivery of the parachute suspension system to the landing point based on the received cone of landing and the cone of descent.

EFFECT: technical result of proposed invention is higher accuracy of navigation and reduced horizontal speed of landing of suspended parachute system during flight to landing point regardless of weather conditions.

7 cl, 3 dwg

Similar patents RU2732474C1

Title Year Author Number
METHOD OF DETERMINING A ZONE OF REACH BY A PARATROOPER OF A TARGET LANDING POINT 2019
  • Kaplin Aleksandr Yurevich
  • Popov Sergej Nikolaevich
  • Stepanov Mikhail Georgievich
RU2705928C1
AUTOMATED PARACHUTE CARGO DELIVERY SYSTEM 2021
  • Kozin Aleksej Viktorovich
  • Kutnyashenko Anton Ivanovich
RU2761675C1
PARACHUTIST MODULAR INFORMATION SYSTEM 2018
  • Kaplin Aleksandr Yurevich
  • Popov Sergej Nikolaevich
  • Stepanov Mikhail Georgievich
  • Teplyakov Dmitrij Vladimirovich
RU2681241C1
COMPLEX TRAINING OF PARACHUTISTS 2014
  • Romanjuk Sergej Vladimirovich
RU2570028C1
METHOD AND SYSTEM OF PARATROOPER LANDING 2017
RU2671896C1
MULTI-CANOPY WING SYSTEM 2020
  • Reshetnikov Mikhail Ivanovich
RU2770501C2
METHOD OF TRAINING PARATROOPERS AND IMPLEMENTATION DEVICE THEREOF 2019
  • Kruglikov Viktor Yakovlevich
  • Markov Maksim Mikhajlovich
  • Prosvirnin Vladimir Georgievich
RU2730759C1
PARACHUTE SIMULATOR TO PREPARE FOR WATER JUMPS 2017
  • Shukshunov Valentin Efimovich
  • Shukshunov Igor Valentinovich
  • Konyukhov Nikolaj Nikolaevich
  • Nefedov Boris Nikolaevich
  • Sorokina Svetlana Nikolaevna
  • Polyakov Igor Mikhajlovich
  • Alekseenko Andrej Mikhajlovich
  • Pokidyshev Sergej Vyacheslavovich
  • Romanov Andrej Vladimirovich
  • Tyurkin Vyacheslav Petrovich
  • Vasilev Vladimir Alekseevich
RU2655230C1
METHOD OF AIRCRAFT SOFT LANDING 2009
  • Blagov Anatolij Viktorovich
  • Lavrenov Aleksandr Nikolaevich
  • Petukhov Roman Andreevich
  • Tararin Lev Nikolaevich
RU2400410C1
METHOD FOR PARACHUTE LANDING OF DRONE AND DRONE WITH ELECTRIC PROPULSOR AND PARACHUTE LANDING SYSTEM 2014
  • Ovinov Aleksandr Valentinovich
  • Sharov Dmitrij Sergeevich
RU2592963C2

RU 2 732 474 C1

Authors

Trofimov Sergej Aleksandrovich

Yastrebov Aleksandr Vasilevich

Glagolev Dmitrij Anatolevich

Dushistov Evgenij Aleksandrovich

Selyukova Anna Aleksandrovna

Razov Aleksandr Anatolevich

Nikolaev Sergej Igorevich

Berezkin Anatolij Nikolaevich

Pogonyshev Oleg Viktorovich

Rodionov Gennadij Nikolaevich

Dates

2020-09-17Published

2019-10-09Filed